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同二聚体模型能够解决细胞色素P450氧化还原酶和细胞色素b5如何竞争细胞色素P450c17上相同结合位点这一难题。

A Homodimer Model Can Resolve the Conundrum as to How Cytochrome P450 Oxidoreductase and Cytochrome b5 Compete for the Same Binding Site on Cytochrome P450c17.

作者信息

Holien Jessica K, Parker Michael W, Conley Alan J, Corbin Cynthia Jo, Rodgers Raymond J, Martin Lisandra L

机构信息

Australian Cancer Research Foundation Rational Drug Discovery Centre, St. Vincent's Institute of Medical Research, Fitzroy, Victoria 3065. Australia.

School of Veterinary Medicine, University of California Davis, Davis, California. United States.

出版信息

Curr Protein Pept Sci. 2017;18(5):515-521. doi: 10.2174/1389203717666161220142957.

Abstract

Cytochrome P450 17α-hydroxylase, 17,20-lyase (P450c17) is a key enzyme in the synthesis of cortisol in the zona fascicula of the adrenal cortex, and the synthesis of androgen precursors in the adrenal zona reticularis and the gonads. Each of these reactions require electrons transferred by the electron donor cytochrome P450 oxidoreductase. The 17α-hydroxylation of its substrate occurs in all cells where P450c17 is expressed. Remarkably, a second, subsequent reaction, namely the 17,20-lyase activity, only occurs in the zona reticularis and gonads. The specificity of the second reaction is due to the interaction with the haem-protein cytochrome b5. Surprisingly, cytochrome b5 and cytochrome P450 oxidoreductase have overlapping sites of interaction on the surface of P450c17. This poses the question as to how cytochrome b5 and cytochrome P450 oxidoreductase interact with P450c17 structurally, functionally and physiologically? This conundrum can be resolved based on the observation that P450c17 can homo-dimerise. A homodimer would allow cytochrome P450 oxidoreductase to bind to one P450c17 monomer of the P450c17 homodimer whilst cytochrome b5 could bind to the other P450c17 monomer simultaneously at the surfaces distal to the dimer interface. This structure is likely to be dynamic in vivo. Our modelling predicts that the proteins can assemble as a stable tetramer and is fully consistent with extensive experimental data that have been published over the last two decades. Predictions derived from this structural model are currently being tested by a range of in vitro and in vivo experimental approaches.

摘要

细胞色素P450 17α-羟化酶、17,20-裂解酶(P450c17)是肾上腺皮质束状带中皮质醇合成以及肾上腺网状带和性腺中雄激素前体合成的关键酶。这些反应中的每一个都需要电子供体细胞色素P450氧化还原酶传递电子。其底物的17α-羟化反应发生在所有表达P450c17的细胞中。值得注意的是,第二个后续反应,即17,20-裂解酶活性,仅发生在网状带和性腺中。第二个反应的特异性归因于与血红素蛋白细胞色素b5的相互作用。令人惊讶的是,细胞色素b5和细胞色素P450氧化还原酶在P450c17表面具有重叠的相互作用位点。这就提出了一个问题,即细胞色素b5和细胞色素P450氧化还原酶在结构、功能和生理上如何与P450c17相互作用?基于P450c17可以同源二聚化这一观察结果,这个难题可以得到解决。同源二聚体将允许细胞色素P450氧化还原酶结合到P450c17同源二聚体的一个P450c17单体上,而细胞色素b5可以同时在二聚体界面远端的表面结合到另一个P450c17单体上。这种结构在体内可能是动态的。我们的模型预测这些蛋白质可以组装成稳定的四聚体,并且与过去二十年发表的大量实验数据完全一致。目前正在通过一系列体外和体内实验方法对从这个结构模型得出的预测进行测试。

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